diff --git a/.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.i18n.yaml b/.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.i18n.yaml index e90e257c46..789f1ec6ea 100644 --- a/.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.i18n.yaml +++ b/.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.i18n.yaml @@ -2,5 +2,5 @@ # side as of the last confirmed-consistent state. Both languages carry equal authority; # after editing either side, bring the other along and re-record with: # pnpm run verify-translation-pairing --write .agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md -2026-07-26-briefed-minimal-translation-updates.md: 63f25d5c36caecba435e9192534e0b494e1e0105 -2026-07-26-briefed-minimal-translation-updates.zh.md: 17cf2f895b187fb794e691c2b14d6e0bff78363d +2026-07-26-briefed-minimal-translation-updates.md: a47251376771165d0eb229aaa0fb7f63589d7d77 +2026-07-26-briefed-minimal-translation-updates.zh.md: 5a6787b9bdb3286b71842abec075c5a0ebfc7991 diff --git a/.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md b/.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md index 63f25d5c36..a472513767 100644 --- a/.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md +++ b/.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md @@ -14,7 +14,7 @@ Pair updates run on a generated briefing instead of the guidance corpus; only ne - **`pnpm run gen-translation-brief [--apply] [pair...]`** ([scripts/gen-translation-brief.ts](../../../../scripts/gen-translation-brief.ts), assembly in [scripts/translation-brief.ts](../../../../scripts/translation-brief.ts)) prints, per out-of-sync pair, the authored side's diff from its recorded last-confirmed blob to the working tree plus the change mapped at the narrowest safely aligned granularity, deterministically widening on mapping failure: a change confined to the pair's byte-identical code fences is computed outright (`--apply` splices it into the counterpart and validates the result against the pairing gate's structural signature before writing); otherwise changed Markdown units (headings, paragraphs, table rows, list items, code fences, block quotes, HTML blocks, thematic breaks, link definitions — matched by container-scoped kind sequences) each carry their last-confirmed source, current source, and current counterpart text with line numbers; units that do not align fall back to depth-matched heading sections; and when sections do not align either, or both sides drifted, the briefing says so and withholds the mapping instead of guessing. Terminology rows are matched against the changed spans only (word-boundary English matching with plural inflections), and for Chinese targets the briefing tracks each relevant term's document-wide first occurrence — when an edit moves it, the vacated and receiving spans join the briefing with an explanatory note, since the 首次出现 annotation must move with it. The unit mapping, code splice, and first-occurrence mechanics adopt the planner design from the [incremental prompt-pipeline work](https://github.com/deepseek-harness/deepseek-harness/pull/684), whose provider-backed bake-off independently validated the same scope ladder for the automated pipeline. The briefing is the translator's whole working set; the full sources of truth remain the escalation path for decisions the briefing cannot answer. - **The update path in [dsh-translate-docs](../../../skills/dsh-translate-docs/SKILL.md)** consumes the briefing: mechanical (code-fence-only) changes are applied with `--apply`, no subagent; prose diffs go to a subagent whose prompt is the briefing, not the corpus; verification is clause-by-clause on the changed spans, not the whole document. -- **The pairing gate takes pair arguments.** `verify-translation-pairing [pair...]` checks just the named pairs (any of a pair's three files, or the bare stem, names it); the corpus-wide sweep remains the no-argument form that `doc-sync` and CI run. `--write` now requires naming the confirmed pairs — bare `--write` refuses, and re-recording everything is an explicit `--write --all` — because the old bare form silently blessed every drifted pair in the tree, including ones the caller never looked at, and a prose-only drift would then stay green forever. Each record's comment names its own scoped command. +- **The pairing gate takes pair arguments.** `verify-translation-pairing [pair...]` checks just the named pairs (any of a pair's three files, or the bare stem, names it); the corpus-wide sweep remains the no-argument form that `doc-sync` and CI run. `--write` now requires naming the confirmed pairs — bare `--write` refuses, and re-recording everything is an explicit `--write --all` — because the old bare form silently blessed every drifted pair in the tree, including ones the caller never looked at, and a prose-only drift would then stay green forever. Each record's comment names its own scoped command. Before recording, `--write` stores each side's exact bytes with `git hash-object -w --stdin` and pins the blob under a content-addressed local `refs/dsh/translation-pairing/snapshots/` ref; an uncommitted last-confirmed snapshot is therefore available to the briefing generator's later `git cat-file`, not merely named by a hash that Git cannot resolve or left vulnerable to garbage collection. ## Benchmark @@ -40,6 +40,7 @@ A second head-to-head replay on the same ten examples compared this note's shipp - A small prose edit's counterpart update now costs a briefing generation plus one small focused task — no corpus reads, no archaeology, no corpus-wide scans inside the loop — and the same PR obligation holds; the cheap path and the correct path point the same way. - The briefing generator is a second consumer of the consistency records: recorded blob hashes now also drive diff recovery and section mapping, strengthening the incentive to keep records honest. +- Each distinct confirmed snapshot retains a content-addressed local ref and object. An abandoned re-record may therefore leave an extra durable pin, but it changes no branch or commit history; this local retention is the tradeoff that prevents garbage collection from invalidating an accepted pairing record. - `--write` without arguments no longer works; muscle-memory callers must name pairs or pass `--all`. That is the point — the bulk bless is now a visible, deliberate act. - Scoped checks mean an update loop can be green while an unrelated pair elsewhere is red; the corpus-wide check in `doc-sync`/CI still owns the tree-level invariant. - Span mapping trusts an alignment only when the kind sequences match across the last-confirmed source, current source, and current counterpart; a mapping failure widens deterministically (units → sections → whole document) rather than guessing, so a restructured document gets an explicit "locate the regions yourself" briefing, never a wrong map. @@ -47,4 +48,4 @@ A second head-to-head replay on the same ten examples compared this note's shipp ## Testing -[scripts/translation-brief.spec.ts](../../../../scripts/translation-brief.spec.ts) pins unit and section span extraction (container-scoped kinds, depth-only section alignment so translated heading text still maps, preamble), alignment and changed-index detection, the mechanical code splice and each of its refusal conditions, terminology row matching in both directions with word-boundary and plural-inflection discipline, first-occurrence movement tracking, fence escalation, and the rendered briefing's contract (unit bundles with three-way context, mechanical/sections/document scopes, per-direction digests, scoped finish commands). [scripts/translation-pairing.spec.ts](../../../../scripts/translation-pairing.spec.ts) pins argument normalization (any pair file or bare stem to the anchor) and the CLI matrix: scoped check, bare `--write` refusal, `--write `, `--write --all`, `--list` exclusivity, unknown flags. +[scripts/translation-brief.spec.ts](../../../../scripts/translation-brief.spec.ts) pins unit and section span extraction (container-scoped kinds, depth-only section alignment so translated heading text still maps, preamble), alignment and changed-index detection, the mechanical code splice and each of its refusal conditions, terminology row matching in both directions with word-boundary and plural-inflection discipline, first-occurrence movement tracking, fence escalation, and the rendered briefing's contract (unit bundles with three-way context, mechanical/sections/document scopes, per-direction digests, scoped finish commands). [scripts/translation-pairing.spec.ts](../../../../scripts/translation-pairing.spec.ts) pins exact-byte persistence and recovery for uncommitted snapshots, failure before an unavailable object can enter a sidecar, argument normalization (any pair file or bare stem to the anchor), and the CLI matrix: scoped check, bare `--write` refusal, `--write `, `--write --all`, `--list` exclusivity, unknown flags. diff --git a/.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.zh.md b/.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.zh.md index 17cf2f895b..5a6787b9bd 100644 --- a/.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.zh.md +++ b/.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.zh.md @@ -14,7 +14,7 @@ Status: implemented - **`pnpm run gen-translation-brief [--apply] [pair...]`**([scripts/gen-translation-brief.ts](../../../../scripts/gen-translation-brief.ts),组装逻辑在 [scripts/translation-brief.ts](../../../../scripts/translation-brief.ts))针对每个失去同步的配对,打印被改一侧从其记录在案的上次确认 blob 到当前工作区的 diff,并附上以能安全对齐的最窄粒度映射的这次改动,映射失败时粒度确定性地逐级放宽:仅落在配对中逐字节一致的围栏代码块内的改动会直接算出(`--apply` 会把它拼接进对侧文件,并在写入前用配对门禁的结构签名校验所得结果);否则,每个有改动的 Markdown 单元(标题、段落、表格行、列表项、围栏代码块、块引用、HTML 块、分隔线、链接定义;匹配依据是以容器为作用域的种类序列)都带上各自的上次确认源文、当前源文与当前对侧文本及行号;无法对齐的单元回退到按深度匹配的标题章节;当章节也无法对齐或两侧同时漂移时,简报会明说这一点并省略映射,而不是靠猜。术语表行只与改动块匹配(英文术语按词边界匹配,含复数变形);当目标侧是中文时,简报还会跟踪每个相关术语在整篇文档中的首次出现:一旦某次编辑使其移位,腾出的与接收的两处区间就会附一条解释性说明加入简报,因为「首次出现」括注必须随之移动。单元映射、代码拼接与首次出现机制采纳了[增量提示词流水线工作](https://github.com/deepseek-harness/deepseek-harness/pull/684)中的规划器设计;该项工作中接入提供方的对比评测,已为自动流水线独立验证了同一套范围阶梯。简报就是译者的全部工作集;简报回答不了的决策,仍以完整的真源文档作为升级求证路径。 - **[dsh-translate-docs](../../../skills/dsh-translate-docs/SKILL.md) 中的更新路径**消费这份简报:机械类改动(只涉及围栏代码块)用 `--apply` 应用,不动用 subagent;行文类 diff 交给 subagent,其提示词就是简报本身,而非指导语料;核验只对改动块逐句进行,不覆盖整篇文档。 -- **配对门禁接受配对参数。**`verify-translation-pairing [pair...]` 只检查被点名的配对(配对三个文件中的任意一个,或其裸词干,都能指代该配对);全语料扫描仍是 `doc-sync`(文档同步门禁)与 CI 运行的无参数形式。`--write` 现在要求点名已确认的配对:裸 `--write` 会拒绝执行,重新记录全部配对必须显式写 `--write --all`;原因是旧的裸形式会默默为树中每一个漂移的配对背书,包括调用者从未看过的那些,纯行文层面的漂移于是可以永远保持绿灯。每份记录的注释都写明针对该配对自身的按对命令。 +- **配对门禁接受配对参数。**`verify-translation-pairing [pair...]` 只检查被点名的配对(配对三个文件中的任意一个,或其裸词干,都能指代该配对);全语料扫描仍是 `doc-sync`(文档同步门禁)与 CI 运行的无参数形式。`--write` 现在要求点名已确认的配对:裸 `--write` 会拒绝执行,重新记录全部配对必须显式写 `--write --all`;原因是旧的裸形式会默默为树中每一个漂移的配对背书,包括调用者从未看过的那些,纯行文层面的漂移于是可以永远保持绿灯。每份记录的注释都写明针对该配对自身的按对命令。写下记录之前,`--write` 用 `git hash-object -w --stdin` 存入每一侧的精确字节,并在内容寻址的本地 `refs/dsh/translation-pairing/snapshots/` ref 下固定该 blob;未提交的上次确认快照因此能被简报生成器之后的 `git cat-file` 取回,而不只是留下一个 Git 无法解析的 hash 名称或暴露于垃圾回收。 ## 基准测试 @@ -40,6 +40,7 @@ Status: implemented - 一次小的行文修改,其对侧更新如今只需生成一份简报,外加一个小而聚焦的任务(不读指导语料、不翻查历史、循环内不做全语料扫描),同一 PR 内完成更新的义务保持不变;低成本的路径与正确的路径指向同一个方向。 - 简报生成器成为一致性记录的第二个消费方:记录的 blob hash 如今还驱动 diff 还原与章节映射,这进一步强化了如实维护记录的动机。 +- 每个不同的已确认快照都会保留一个内容寻址的本地 ref 和对象。因此,中途放弃的重新记录可能留下额外的持久固定项,但它不会改变任何分支或提交历史;这种本地保留正是防止垃圾回收让已接受配对记录失效所付出的代价。 - 不带参数的 `--write` 不再可用;靠肌肉记忆的调用者必须点名配对或传 `--all`。这正是目的所在:批量背书如今是一个可见的、有意为之的动作。 - 按对检查意味着一个更新循环可以在别处某个无关配对处于红灯时自己保持绿灯;`doc-sync`/CI 中的全语料检查仍然承载树级不变式。 - 区间映射只在上次确认源文、当前源文与当前对侧文本三方的种类序列一致时才信任一处对齐;映射失败时粒度确定性地逐级放宽(单元 → 章节 → 整篇文档)而不是靠猜,因此被重构过的文档拿到的是一份明确写着「请自行定位相关区域」的简报,绝不会是一张错误的地图。 @@ -47,4 +48,4 @@ Status: implemented ## 测试 -[scripts/translation-brief.spec.ts](../../../../scripts/translation-brief.spec.ts) 固定单元与章节的区间提取(以容器为作用域的种类、只按深度对齐章节从而让已翻译的标题文字仍能映射、首个标题前的序言)、对齐与改动索引检测、机械代码拼接及其每一个拒绝条件、带词边界与复数变形约束的双向术语行匹配、首次出现移位跟踪、围栏升级,以及渲染后简报的契约(带三方上下文的单元条目、机械/章节/整篇文档三种范围、分方向的规则摘要、按对的收尾命令)。[scripts/translation-pairing.spec.ts](../../../../scripts/translation-pairing.spec.ts) 固定参数归一化(配对的任一文件或裸词干都归一到锚点)与 CLI(命令行界面)用例矩阵:按对检查、裸 `--write` 拒绝执行、`--write `、`--write --all`、`--list` 的互斥性、未知标志。 +[scripts/translation-brief.spec.ts](../../../../scripts/translation-brief.spec.ts) 固定单元与章节的区间提取(以容器为作用域的种类、只按深度对齐章节从而让已翻译的标题文字仍能映射、首个标题前的序言)、对齐与改动索引检测、机械代码拼接及其每一个拒绝条件、带词边界与复数变形约束的双向术语行匹配、首次出现移位跟踪、围栏升级,以及渲染后简报的契约(带三方上下文的单元条目、机械/章节/整篇文档三种范围、分方向的规则摘要、按对的收尾命令)。[scripts/translation-pairing.spec.ts](../../../../scripts/translation-pairing.spec.ts) 固定未提交快照的精确字节持久化与取回、在不可用对象进入伴随记录前失败、参数归一化(配对的任一文件或裸词干都归一到锚点),以及 CLI(命令行界面)用例矩阵:按对检查、裸 `--write` 拒绝执行、`--write `、`--write --all`、`--list` 的互斥性、未知标志。 diff --git a/docs/i18n/README.i18n.yaml b/docs/i18n/README.i18n.yaml index e4fb87a322..5ad0a7b7dd 100644 --- a/docs/i18n/README.i18n.yaml +++ b/docs/i18n/README.i18n.yaml @@ -2,5 +2,5 @@ # side as of the last confirmed-consistent state. Both languages carry equal authority; # after editing either side, bring the other along and re-record with: # pnpm run verify-translation-pairing --write docs/i18n/README.md -README.md: 9fe01174909f0400b94c70b95759526aec783d2e -README.zh.md: 2a9a20ae4702e205879f0fbfb6d76d3a761d2446 +README.md: d1fff61a1d3db7fbe93d3c95b144598c2ca41c8b +README.zh.md: 9f1d61f1b854ead0ef5851157cce2e9a6de83d89 diff --git a/docs/i18n/README.md b/docs/i18n/README.md index 9fe0117490..d1fff61a1d 100644 --- a/docs/i18n/README.md +++ b/docs/i18n/README.md @@ -15,7 +15,7 @@ This repo's documentation is read by people and agents both inside and outside t foo.zh.md: 89e6c98d92887913cadf06b2adb97f26cde4849b ``` - Blob hashes, not commit hashes, so the record is computable for files edited in the same PR (`git hash-object foo.md`) and consistency is a pure content comparison. The recorded hashes also recover the exact last-confirmed text of either side, so an out-of-sync pair is updated by patching the counterpart minimally against the edited side's diff — never by re-translating whole files. `pnpm run gen-translation-brief ` assembles that update's working set mechanically at the narrowest safely aligned granularity — changed Markdown units, then heading sections, then whole document — with the edited side's diff since last confirmation, each changed span's three-way text, the terminology rows the change touches, and the binding update rules; a change confined to the pair's byte-identical code fences is computed outright, and `--apply` splices it into the counterpart after structural validation ([briefed-updates Agent Note](../../.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md)). After bringing the pair back in line, `pnpm run verify-translation-pairing --write ` re-records both hashes; that yaml diff is the reviewable act of confirming consistency, which is why `--write` requires naming the pairs you confirmed (`--write --all` is the explicit corpus-wide form). + Blob hashes, not commit hashes, so the record is computable for files edited in the same PR (`git hash-object foo.md`) and consistency is a pure content comparison. `--write` stores those snapshots in the local Git object database before recording them, including uncommitted working-tree contents, and pins every distinct stored blob under a content-addressed `refs/dsh/translation-pairing/snapshots/` ref so garbage collection cannot invalidate a recorded recovery pointer. The recorded hashes therefore recover the exact last-confirmed text of either side, so an out-of-sync pair is updated by patching the counterpart minimally against the edited side's diff — never by re-translating whole files. `pnpm run gen-translation-brief ` assembles that update's working set mechanically at the narrowest safely aligned granularity — changed Markdown units, then heading sections, then whole document — with the edited side's diff since last confirmation, each changed span's three-way text, the terminology rows the change touches, and the binding update rules; a change confined to the pair's byte-identical code fences is computed outright, and `--apply` splices it into the counterpart after structural validation ([briefed-updates Agent Note](../../.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md)). After bringing the pair back in line, `pnpm run verify-translation-pairing --write ` re-records both hashes; that yaml diff is the reviewable act of confirming consistency, which is why `--write` requires naming the pairs you confirmed (`--write --all` is the explicit corpus-wide form). - **Language switcher.** Both files link to each other immediately after their H1 heading: the English file carries `English | [中文](foo.zh.md)` and the Chinese file carries `[English](foo.md) | 中文`. - **Structure mirrors the counterpart.** Heading depths and order, list kinds, ordered-list starts, list item counts, table row and column counts, link targets, and verbatim code blocks match one to one across the pair — see [translation-rules.md](translation-rules.md) for the full preservation rules. Existing Markdown gates apply to `.zh.md` files unchanged (`verify-md-wrap`, `verify-md-links`). diff --git a/docs/i18n/README.zh.md b/docs/i18n/README.zh.md index 2a9a20ae47..9f1d61f1b8 100644 --- a/docs/i18n/README.zh.md +++ b/docs/i18n/README.zh.md @@ -15,7 +15,7 @@ foo.zh.md: 89e6c98d92887913cadf06b2adb97f26cde4849b ``` - 用 blob hash 而不是 commit hash,这样同一个 PR 里改动的文件也能算出记录(`git hash-object foo.md`),一致性是纯内容比较。记录的 hash 还能还原任一侧上次确认时的确切文本,所以失去同步的配对是「按被改一侧的 diff 最小化地修补另一侧」,从不整篇重译。`pnpm run gen-translation-brief ` 会以能安全对齐的最窄粒度——先是有改动的 Markdown 单元,再是标题小节,最后是整篇文档——机械地汇集这次更新的工作集:被改一侧自上次确认以来的 diff、每个改动块的三方文本、改动触及的术语表行,以及有约束力的更新规则;仅落在配对中逐字节一致的围栏代码块内的改动可以直接算出,`--apply` 则经结构签名校验后把它拼接进对侧文件([briefed-updates Agent Note](../../.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md))。两侧对齐后,`pnpm run verify-translation-pairing --write ` 重新记录两个 hash;那份 yaml diff 就是「确认一致」这个动作本身,可以被评审,也正因如此,`--write` 要求点名你确认过的配对(`--write --all` 是显式的全语料形式)。 + 用 blob hash 而不是 commit hash,这样同一个 PR 里改动的文件也能算出记录(`git hash-object foo.md`),一致性是纯内容比较。`--write` 会先把这些快照存入本地 Git 对象库再写下记录,未提交的工作树内容也不例外;它还会在内容寻址的 `refs/dsh/translation-pairing/snapshots/` ref 下固定每个不同的已存 blob,使垃圾回收无法让已记录的恢复指针失效。因此记录的 hash 能还原任一侧上次确认时的确切文本,所以失去同步的配对是「按被改一侧的 diff 最小化地修补另一侧」,从不整篇重译。`pnpm run gen-translation-brief ` 会以能安全对齐的最窄粒度——先是有改动的 Markdown 单元,再是标题小节,最后是整篇文档——机械地汇集这次更新的工作集:被改一侧自上次确认以来的 diff、每个改动块的三方文本、改动触及的术语表行,以及有约束力的更新规则;仅落在配对中逐字节一致的围栏代码块内的改动可以直接算出,`--apply` 则经结构签名校验后把它拼接进对侧文件([briefed-updates Agent Note](../../.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md))。两侧对齐后,`pnpm run verify-translation-pairing --write ` 重新记录两个 hash;那份 yaml diff 就是「确认一致」这个动作本身,可以被评审,也正因如此,`--write` 要求点名你确认过的配对(`--write --all` 是显式的全语料形式)。 - **语言切换行。** 两个文件在各自 H1 标题之后立即互链:英文文件带 `English | [中文](foo.zh.md)`,中文文件带 `[English](foo.md) | 中文`。 - **结构与另一侧一一对应。** 标题深度与顺序、列表类型、有序列表起始编号、列表项数量、表格行列数、链接目标与逐字节一致的代码块在配对两侧一一对应;完整保持规则见 [translation-rules.md](translation-rules.md)。既有 Markdown 门禁对 `.zh.md` 文件原样生效(`verify-md-wrap`、`verify-md-links`)。 diff --git a/scripts/snapshots/translation-prompt-v4/request-response.expected.json b/scripts/snapshots/translation-prompt-v4/request-response.expected.json index 04bee9f62e..d26d2e8d22 100644 --- a/scripts/snapshots/translation-prompt-v4/request-response.expected.json +++ b/scripts/snapshots/translation-prompt-v4/request-response.expected.json @@ -24,11 +24,11 @@ }, { "role": "user", - "content": "# Bilingual documentation\n\nEnglish | [中文](README.zh.md)\n\nThis repo's documentation is read by people and agents both inside and outside the company, so every document in scope is maintained in English and Simplified Chinese. This page defines the pairing contract, enforcement gate, scope, and exclusions; [translation-rules.md](translation-rules.md) defines how to translate; [terminology.md](terminology.md) is the terminology source of truth. The committed agent workflow lives in [.agents/skills/dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md).\n\n## The pairing contract\n\n- **Both languages carry equal authority.** A document may be authored and reviewed in either language first — a Chinese-first Agent Note is as legitimate as an English-first one — and the counterpart is translated from it. Neither file outranks the other; what binds them is that they must say the same thing.\n- **A pair is three sibling files.** The English `foo.md`, the Chinese `foo.zh.md`, and a consistency record `foo.i18n.yaml`, all in the same directory. No locale directories, no separate translation repo, no interleaved bilingual files. Pairs merge whole: a PR never lands one language without the other two files.\n- **The consistency record.** `foo.i18n.yaml` holds the full git blob hash of each side as of the last time the two were confirmed to say the same thing:\n\n ```yaml\n foo.md: 3f786850e387550fdab836ed7e6dc881de23001b\n foo.zh.md: 89e6c98d92887913cadf06b2adb97f26cde4849b\n ```\n\n Blob hashes, not commit hashes, so the record is computable for files edited in the same PR (`git hash-object foo.md`) and consistency is a pure content comparison. The recorded hashes also recover the exact last-confirmed text of either side, so an out-of-sync pair is updated by patching the counterpart minimally against the edited side's diff — never by re-translating whole files. `pnpm run gen-translation-brief ` assembles that update's working set mechanically at the narrowest safely aligned granularity — changed Markdown units, then heading sections, then whole document — with the edited side's diff since last confirmation, each changed span's three-way text, the terminology rows the change touches, and the binding update rules; a change confined to the pair's byte-identical code fences is computed outright, and `--apply` splices it into the counterpart after structural validation ([briefed-updates Agent Note](../../.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md)). After bringing the pair back in line, `pnpm run verify-translation-pairing --write ` re-records both hashes; that yaml diff is the reviewable act of confirming consistency, which is why `--write` requires naming the pairs you confirmed (`--write --all` is the explicit corpus-wide form).\n- **Language switcher.** Both files link to each other immediately after their H1 heading: the English file carries `English | [中文](foo.zh.md)` and the Chinese file carries `[English](foo.md) | 中文`.\n- **Structure mirrors the counterpart.** Heading depths and order, list kinds, ordered-list starts, list item counts, table row and column counts, link targets, and verbatim code blocks match one to one across the pair — see [translation-rules.md](translation-rules.md) for the full preservation rules. Existing Markdown gates apply to `.zh.md` files unchanged (`verify-md-wrap`, `verify-md-links`).\n\n## The gate: verify-translation-pairing\n\n`pnpm run verify-translation-pairing` (part of `doc-sync`, which contributors run locally for documentation changes and CI runs exhaustively) enforces the contract mechanically:\n\n1. Every document in scope has a complete pair. README discovery is case-insensitive on the basename, so `missions/readme.md` is in scope alongside the other documentation roots.\n2. Every pair artifact that exists at all is complete and consistent: all three files present, each side's current blob hash equals the recorded one (editing either side without re-confirming the pair goes red), both sides carry the language switcher, and the structural signatures match in order — heading depths, verbatim code blocks (info string and content), table row and column counts, list kinds, ordered-list starts, item counts, and every link target apart from the switcher.\n3. Files listed as `excluded` have no `.zh.md` and no `.i18n.yaml` at all. Frozen Agent Notes under `.agents/notes/archived/` are outside this evolving gate; their dedicated verifier requires and seals the complete existing triplet instead.\n\nSource-oriented code gates consume an exact `.zh.md` fence sequence as a derivative of its unsuffixed sibling instead of compiling or manifesting the same code twice. The sequence must match in length, order, fence kind, and byte-exact body; otherwise both copies remain independently checked and the pairing gate reports the structural mismatch.\n\n`pnpm run verify-translation-pairing --list` prints the current pairing state of every document in scope — missing, out-of-sync, or ok. It never fails; `missing` and `out-of-sync` rows identify violations that the normal check rejects.\n\n`pnpm run verify-translation-pairing ` checks just the named pairs — any of a pair's three files (or its bare stem) names it — so an update loop verifies its own pair in seconds instead of re-scanning the corpus. The no-argument corpus-wide form is what `doc-sync` and CI run; a scoped green never substitutes for it at PR level.\n\nThe practical rule this gate creates: **when a PR edits either side of a paired document, the same PR updates the counterpart and re-records the pair** (run the [dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md) skill, then `--write `), exactly like the repo's existing doc-sync rule for code and READMEs. A PR that leaves a pair out of sync goes red in CI.\n\nThe gate's limit, stated plainly: **a green gate means the pair was confirmed consistent at these exact contents, not that the confirmation was sound.** It checks hashes and shape; it cannot judge whether the two sides actually say the same thing, or whether the wording is accurate, well-termed, and natural — that is the reviewer's half of the contract, per [translation-rules.md](translation-rules.md). A re-recorded pair with a sloppy counterpart passes the gate; it must not pass review.\n\n## Scope and exclusions\n\n**Scope**: every non-vendor README, plus every active document under `.agents/notes/**`, `docs/**`, and `python/**`. README matching is case-insensitive on the basename and covers future directories without another manifest edit. Dependency and ignored build-output trees and the frozen `.agents/notes/archived/` tree are discovery exclusions, not evolving translation source.\n\n**Excluded** (never paired, and the gate rejects a `.zh.md` or `.i18n.yaml` for them):\n\n- `docs/cordis-catalog/`, `docs/tool-catalog/`, `docs/config-catalog.md`, `docs/persistence-catalog.md`, `docs/module-graph.md`, `docs/agent-lifecycle.md`, `docs/capability-seams.md`, `docs/event-producer-consumer.md`, `docs/graph-atlas.md`, and `docs/tool-execution-pipeline.md` — generated files; their generators emit English only today, so a hand-written translation would go stale on every regeneration. The planned follow-up is to teach the generators to emit Chinese alongside English, at which point these leave the exclusion list.\n- `docs/AGENTS.md`, `.agents/notes/**/AGENTS.md`, and their `CLAUDE.md` instruction symlinks — agent instructions, maintained in English only like the root `AGENTS.md`.\n- `docs/i18n/terminology.md` and [style-samples.md](style-samples.md) — both are bilingual by construction.\n- [translation-prompt.md](translation-prompt.md) — the automated pipeline's prompt template; its body is machine-consumed verbatim, so a paired translation would change pipeline behavior.\n- `.agents/notes/archived/` — frozen historical triplets. [`verify-archived-agent-notes`](../../scripts/verify-archived-agent-notes.ts) validates their completeness and content seals; translation maintenance must never rewrite them.\n\n**Universal requirement**: every current or future document in scope must merge as a complete bilingual pair. [scripts/translation-pairing.manifest.json](../../scripts/translation-pairing.manifest.json) contains only explicit exclusions; there is no per-file rollout list, date cutoff, or README-specific policy class.\n\n## Division of labor\n\nCounterparts here are produced by an agent running [dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md) and reviewed by a human — inference is cheap here, review attention is the scarce resource. The gate checks pair completeness, recorded hashes, switchers, and its documented structural signature. Review still owns translation quality, terminology, and structural requirements that the signature does not encode. The prompt contract is executable: [scripts/translation-prompt.ts](../../scripts/translation-prompt.ts) renders the committed template (terminology injected; the template carries its own calibrated rules) into either direction and parses the three-section response, while `verify-translation-prompt` exercises both render directions and the checked-in example in `doc-sync`.\n" + "content": "# Bilingual documentation\n\nEnglish | [中文](README.zh.md)\n\nThis repo's documentation is read by people and agents both inside and outside the company, so every document in scope is maintained in English and Simplified Chinese. This page defines the pairing contract, enforcement gate, scope, and exclusions; [translation-rules.md](translation-rules.md) defines how to translate; [terminology.md](terminology.md) is the terminology source of truth. The committed agent workflow lives in [.agents/skills/dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md).\n\n## The pairing contract\n\n- **Both languages carry equal authority.** A document may be authored and reviewed in either language first — a Chinese-first Agent Note is as legitimate as an English-first one — and the counterpart is translated from it. Neither file outranks the other; what binds them is that they must say the same thing.\n- **A pair is three sibling files.** The English `foo.md`, the Chinese `foo.zh.md`, and a consistency record `foo.i18n.yaml`, all in the same directory. No locale directories, no separate translation repo, no interleaved bilingual files. Pairs merge whole: a PR never lands one language without the other two files.\n- **The consistency record.** `foo.i18n.yaml` holds the full git blob hash of each side as of the last time the two were confirmed to say the same thing:\n\n ```yaml\n foo.md: 3f786850e387550fdab836ed7e6dc881de23001b\n foo.zh.md: 89e6c98d92887913cadf06b2adb97f26cde4849b\n ```\n\n Blob hashes, not commit hashes, so the record is computable for files edited in the same PR (`git hash-object foo.md`) and consistency is a pure content comparison. `--write` stores those snapshots in the local Git object database before recording them, including uncommitted working-tree contents, and pins every distinct stored blob under a content-addressed `refs/dsh/translation-pairing/snapshots/` ref so garbage collection cannot invalidate a recorded recovery pointer. The recorded hashes therefore recover the exact last-confirmed text of either side, so an out-of-sync pair is updated by patching the counterpart minimally against the edited side's diff — never by re-translating whole files. `pnpm run gen-translation-brief ` assembles that update's working set mechanically at the narrowest safely aligned granularity — changed Markdown units, then heading sections, then whole document — with the edited side's diff since last confirmation, each changed span's three-way text, the terminology rows the change touches, and the binding update rules; a change confined to the pair's byte-identical code fences is computed outright, and `--apply` splices it into the counterpart after structural validation ([briefed-updates Agent Note](../../.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md)). After bringing the pair back in line, `pnpm run verify-translation-pairing --write ` re-records both hashes; that yaml diff is the reviewable act of confirming consistency, which is why `--write` requires naming the pairs you confirmed (`--write --all` is the explicit corpus-wide form).\n- **Language switcher.** Both files link to each other immediately after their H1 heading: the English file carries `English | [中文](foo.zh.md)` and the Chinese file carries `[English](foo.md) | 中文`.\n- **Structure mirrors the counterpart.** Heading depths and order, list kinds, ordered-list starts, list item counts, table row and column counts, link targets, and verbatim code blocks match one to one across the pair — see [translation-rules.md](translation-rules.md) for the full preservation rules. Existing Markdown gates apply to `.zh.md` files unchanged (`verify-md-wrap`, `verify-md-links`).\n\n## The gate: verify-translation-pairing\n\n`pnpm run verify-translation-pairing` (part of `doc-sync`, which contributors run locally for documentation changes and CI runs exhaustively) enforces the contract mechanically:\n\n1. Every document in scope has a complete pair. README discovery is case-insensitive on the basename, so `missions/readme.md` is in scope alongside the other documentation roots.\n2. Every pair artifact that exists at all is complete and consistent: all three files present, each side's current blob hash equals the recorded one (editing either side without re-confirming the pair goes red), both sides carry the language switcher, and the structural signatures match in order — heading depths, verbatim code blocks (info string and content), table row and column counts, list kinds, ordered-list starts, item counts, and every link target apart from the switcher.\n3. Files listed as `excluded` have no `.zh.md` and no `.i18n.yaml` at all. Frozen Agent Notes under `.agents/notes/archived/` are outside this evolving gate; their dedicated verifier requires and seals the complete existing triplet instead.\n\nSource-oriented code gates consume an exact `.zh.md` fence sequence as a derivative of its unsuffixed sibling instead of compiling or manifesting the same code twice. The sequence must match in length, order, fence kind, and byte-exact body; otherwise both copies remain independently checked and the pairing gate reports the structural mismatch.\n\n`pnpm run verify-translation-pairing --list` prints the current pairing state of every document in scope — missing, out-of-sync, or ok. It never fails; `missing` and `out-of-sync` rows identify violations that the normal check rejects.\n\n`pnpm run verify-translation-pairing ` checks just the named pairs — any of a pair's three files (or its bare stem) names it — so an update loop verifies its own pair in seconds instead of re-scanning the corpus. The no-argument corpus-wide form is what `doc-sync` and CI run; a scoped green never substitutes for it at PR level.\n\nThe practical rule this gate creates: **when a PR edits either side of a paired document, the same PR updates the counterpart and re-records the pair** (run the [dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md) skill, then `--write `), exactly like the repo's existing doc-sync rule for code and READMEs. A PR that leaves a pair out of sync goes red in CI.\n\nThe gate's limit, stated plainly: **a green gate means the pair was confirmed consistent at these exact contents, not that the confirmation was sound.** It checks hashes and shape; it cannot judge whether the two sides actually say the same thing, or whether the wording is accurate, well-termed, and natural — that is the reviewer's half of the contract, per [translation-rules.md](translation-rules.md). A re-recorded pair with a sloppy counterpart passes the gate; it must not pass review.\n\n## Scope and exclusions\n\n**Scope**: every non-vendor README, plus every active document under `.agents/notes/**`, `docs/**`, and `python/**`. README matching is case-insensitive on the basename and covers future directories without another manifest edit. Dependency and ignored build-output trees and the frozen `.agents/notes/archived/` tree are discovery exclusions, not evolving translation source.\n\n**Excluded** (never paired, and the gate rejects a `.zh.md` or `.i18n.yaml` for them):\n\n- `docs/cordis-catalog/`, `docs/tool-catalog/`, `docs/config-catalog.md`, `docs/persistence-catalog.md`, `docs/module-graph.md`, `docs/agent-lifecycle.md`, `docs/capability-seams.md`, `docs/event-producer-consumer.md`, `docs/graph-atlas.md`, and `docs/tool-execution-pipeline.md` — generated files; their generators emit English only today, so a hand-written translation would go stale on every regeneration. The planned follow-up is to teach the generators to emit Chinese alongside English, at which point these leave the exclusion list.\n- `docs/AGENTS.md`, `.agents/notes/**/AGENTS.md`, and their `CLAUDE.md` instruction symlinks — agent instructions, maintained in English only like the root `AGENTS.md`.\n- `docs/i18n/terminology.md` and [style-samples.md](style-samples.md) — both are bilingual by construction.\n- [translation-prompt.md](translation-prompt.md) — the automated pipeline's prompt template; its body is machine-consumed verbatim, so a paired translation would change pipeline behavior.\n- `.agents/notes/archived/` — frozen historical triplets. [`verify-archived-agent-notes`](../../scripts/verify-archived-agent-notes.ts) validates their completeness and content seals; translation maintenance must never rewrite them.\n\n**Universal requirement**: every current or future document in scope must merge as a complete bilingual pair. [scripts/translation-pairing.manifest.json](../../scripts/translation-pairing.manifest.json) contains only explicit exclusions; there is no per-file rollout list, date cutoff, or README-specific policy class.\n\n## Division of labor\n\nCounterparts here are produced by an agent running [dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md) and reviewed by a human — inference is cheap here, review attention is the scarce resource. The gate checks pair completeness, recorded hashes, switchers, and its documented structural signature. Review still owns translation quality, terminology, and structural requirements that the signature does not encode. The prompt contract is executable: [scripts/translation-prompt.ts](../../scripts/translation-prompt.ts) renders the committed template (terminology injected; the template carries its own calibrated rules) into either direction and parses the three-section response, while `verify-translation-prompt` exercises both render directions and the checked-in example in `doc-sync`.\n" }, { "role": "assistant", - "content": "# 双语文档\n\n[English](README.md) | 中文\n\n本仓库的文档会被公司内外的人和 agent(智能体)阅读,因此范围内的每篇文档都以英文和简体中文维护。本页定义配对契约、强制门禁、范围与排除规则;[translation-rules.md](translation-rules.md) 定义如何翻译;[terminology.md](terminology.md) 是术语真源。仓库内置的 agent 工作流见 [.agents/skills/dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md)。\n\n## 配对契约\n\n- **两种语言同权。** 一篇文档可以先用任一语言撰写和评审(先写中文的 Agent Note 与先写英文的一样正当),另一侧由它翻译而来。两个文件谁也不高于谁;约束它们的是二者必须说同样的话。\n- **一对文档是三个同目录文件。** 英文 `foo.md`、中文 `foo.zh.md`,加一份一致性记录 `foo.i18n.yaml`,都在同一目录。不用语言目录,不用独立翻译仓库,不用中英混排的单文件。配对必须整体合并:PR(Pull Request)永远不会只带一种语言而缺其余两个文件。\n- **一致性记录。**`foo.i18n.yaml` 保存两侧文件在上一次被确认「说同样的话」时各自的完整 git blob hash:\n\n ```yaml\n foo.md: 3f786850e387550fdab836ed7e6dc881de23001b\n foo.zh.md: 89e6c98d92887913cadf06b2adb97f26cde4849b\n ```\n\n 用 blob hash 而不是 commit hash,这样同一个 PR 里改动的文件也能算出记录(`git hash-object foo.md`),一致性是纯内容比较。记录的 hash 还能还原任一侧上次确认时的确切文本,所以失去同步的配对是「按被改一侧的 diff 最小化地修补另一侧」,从不整篇重译。`pnpm run gen-translation-brief ` 会以能安全对齐的最窄粒度——先是有改动的 Markdown 单元,再是标题小节,最后是整篇文档——机械地汇集这次更新的工作集:被改一侧自上次确认以来的 diff、每个改动块的三方文本、改动触及的术语表行,以及有约束力的更新规则;仅落在配对中逐字节一致的围栏代码块内的改动可以直接算出,`--apply` 则经结构签名校验后把它拼接进对侧文件([briefed-updates Agent Note](../../.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md))。两侧对齐后,`pnpm run verify-translation-pairing --write ` 重新记录两个 hash;那份 yaml diff 就是「确认一致」这个动作本身,可以被评审,也正因如此,`--write` 要求点名你确认过的配对(`--write --all` 是显式的全语料形式)。\n- **语言切换行。** 两个文件在各自 H1 标题之后立即互链:英文文件带 `English | [中文](foo.zh.md)`,中文文件带 `[English](foo.md) | 中文`。\n- **结构与另一侧一一对应。** 标题深度与顺序、列表类型、有序列表起始编号、列表项数量、表格行列数、链接目标与逐字节一致的代码块在配对两侧一一对应;完整保持规则见 [translation-rules.md](translation-rules.md)。既有 Markdown 门禁对 `.zh.md` 文件原样生效(`verify-md-wrap`、`verify-md-links`)。\n\n## 门禁:verify-translation-pairing\n\n`pnpm run verify-translation-pairing`(`doc-sync`(文档同步门禁)的一环,贡献者会针对文档变更在本地运行,CI 则会完整运行)机械地强制执行这份契约:\n\n1. 范围内的每篇文档都有完整配对。发现 README 时,basename 不区分大小写,因此 `missions/readme.md` 与其他文档根一样属于范围。\n2. 任何已存在的配对产物都完整且一致:三个文件齐全、每一侧的当前 blob hash 等于记录值(改了任一侧而没重新确认配对就变红)、双方都带语言切换行、结构签名按序一致:标题深度、逐字节一致的代码块(信息字符串与内容)、表格行列数、列表类型、有序列表起始编号、列表项数量,以及除切换行之外的每个链接目标。\n3. 列为 `excluded` 的文件完全没有 `.zh.md`,也没有 `.i18n.yaml`。`.agents/notes/archived/` 下冻结的 Agent Note 不受这个持续演进的门禁约束;专用校验器会要求其现有的三个配对文件完整,并将其封存。\n\n面向源码的代码门禁会把精确的 `.zh.md` 围栏序列视为其无后缀兄弟文件的派生内容,而不会再次编译相同代码或在 manifest 中重复登记。该序列必须在长度、顺序、围栏类型和按字节精确的正文上一致;否则两份副本仍会独立受检,配对门禁也会报告结构不匹配。\n\n`pnpm run verify-translation-pairing --list` 打印范围内每篇文档的当前配对状态(missing、out-of-sync 或 ok)。它从不失败;其中 missing 与 out-of-sync 行指出普通检查会拒绝的违规。\n\n`pnpm run verify-translation-pairing ` 只检查被点名的配对——配对的三个文件中的任意一个(或其裸词干)都能点名它——因此更新循环几秒内就能验证自己的配对,而不必重新扫描全语料。`doc-sync` 与 CI 运行的是无参数的全语料形式;限定范围的绿灯在 PR 层面永远不能替代它。\n\n这个门禁带来的实际规则是:**当一个 PR 修改了已配对文档的任一侧时,同一个 PR 更新另一侧并重新记录配对**(运行 [dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md) skill(技能),再 `--write `),与本仓库既有的代码与 README 的 doc-sync 规则完全一致。留下失去同步的配对的 PR 会在 CI 变红。\n\n把门禁的边界说白:**门禁通过意味着这组文档在当前内容上的一致性得到了确认,不代表确认本身正确可靠。** 它检查记录的 hash 与结构签名;它无法判断两侧是否真的在说同样的话,也无法判断措辞是否准确、术语是否得当、行文是否自然;这部分契约由评审者把关,见 [translation-rules.md](translation-rules.md)。重新记录了 hash 但另一侧翻得潦草的配对能通过门禁;它不得通过评审。\n\n## 范围与排除\n\n**范围**:除 vendor 源码外的全部 README,以及 `.agents/notes/**`、`docs/**` 与 `python/**` 下的全部活跃文档。匹配 README 时只看文件名且不区分大小写,因此今后新增的目录无需再修改 manifest。依赖目录、被忽略的构建产物目录以及冻结的 `.agents/notes/archived/` 目录树只在发现阶段排除,不属于持续演进的翻译源文档。\n\n**排除**(永不配对,门禁拒绝为它们建 `.zh.md` 或 `.i18n.yaml`):\n\n- `docs/cordis-catalog/`、`docs/tool-catalog/`、`docs/config-catalog.md`、`docs/persistence-catalog.md`、`docs/module-graph.md`、`docs/agent-lifecycle.md`、`docs/capability-seams.md`、`docs/event-producer-consumer.md`、`docs/graph-atlas.md` 与 `docs/tool-execution-pipeline.md`:生成文件;生成器目前只输出英文,手写译文在每次重新生成时必然陈旧。计划中的后续工作是让生成器同时输出中文,届时这些文件移出排除清单。\n- `docs/AGENTS.md`、`.agents/notes/**/AGENTS.md` 以及指向它们的 `CLAUDE.md` 指令符号链接:agent 指令,与根 `AGENTS.md` 一样只以英文维护。\n- `docs/i18n/terminology.md` 与 [style-samples.md](style-samples.md):二者本身即为中英对照文档。\n- [translation-prompt.md](translation-prompt.md):自动翻译流水线的提示词模板;正文逐字进入模型请求,配对翻译会改变流水线行为。\n- `.agents/notes/archived/`:冻结的历史三文件配对。[`verify-archived-agent-notes`](../../scripts/verify-archived-agent-notes.ts) 校验其完整性和内容封存记录;翻译维护绝不能重写这些文件。\n\n**统一要求**:当前及今后纳入范围的每篇文档,合并时都必须构成完整的双语配对。[scripts/translation-pairing.manifest.json](../../scripts/translation-pairing.manifest.json) 只包含显式排除项;不存在逐文件推进清单、日期分界或 README 专用政策类别。\n\n## 分工\n\n这里的对侧文件由运行 [dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md) 的 agent 生成,再由人评审:在这里推理(inference)很便宜,评审注意力才是稀缺资源。门禁负责检查配对是否完整、记录的 hash、语言切换行以及本文列出的结构签名;翻译质量、术语和签名未涵盖的结构要求仍由评审把关。提示词契约也有可执行实现:[scripts/translation-prompt.ts](../../scripts/translation-prompt.ts) 会把仓库内置的模板(注入术语表;模板自带经人工校准的规则)渲染为英译中或中译英两个方向的提示词,并解析三段式响应;`doc-sync` 中的 `verify-translation-prompt` 会检查两个渲染方向与仓库内示例。\n" + "content": "# 双语文档\n\n[English](README.md) | 中文\n\n本仓库的文档会被公司内外的人和 agent(智能体)阅读,因此范围内的每篇文档都以英文和简体中文维护。本页定义配对契约、强制门禁、范围与排除规则;[translation-rules.md](translation-rules.md) 定义如何翻译;[terminology.md](terminology.md) 是术语真源。仓库内置的 agent 工作流见 [.agents/skills/dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md)。\n\n## 配对契约\n\n- **两种语言同权。** 一篇文档可以先用任一语言撰写和评审(先写中文的 Agent Note 与先写英文的一样正当),另一侧由它翻译而来。两个文件谁也不高于谁;约束它们的是二者必须说同样的话。\n- **一对文档是三个同目录文件。** 英文 `foo.md`、中文 `foo.zh.md`,加一份一致性记录 `foo.i18n.yaml`,都在同一目录。不用语言目录,不用独立翻译仓库,不用中英混排的单文件。配对必须整体合并:PR(Pull Request)永远不会只带一种语言而缺其余两个文件。\n- **一致性记录。**`foo.i18n.yaml` 保存两侧文件在上一次被确认「说同样的话」时各自的完整 git blob hash:\n\n ```yaml\n foo.md: 3f786850e387550fdab836ed7e6dc881de23001b\n foo.zh.md: 89e6c98d92887913cadf06b2adb97f26cde4849b\n ```\n\n 用 blob hash 而不是 commit hash,这样同一个 PR 里改动的文件也能算出记录(`git hash-object foo.md`),一致性是纯内容比较。`--write` 会先把这些快照存入本地 Git 对象库再写下记录,未提交的工作树内容也不例外;它还会在内容寻址的 `refs/dsh/translation-pairing/snapshots/` ref 下固定每个不同的已存 blob,使垃圾回收无法让已记录的恢复指针失效。因此记录的 hash 能还原任一侧上次确认时的确切文本,所以失去同步的配对是「按被改一侧的 diff 最小化地修补另一侧」,从不整篇重译。`pnpm run gen-translation-brief ` 会以能安全对齐的最窄粒度——先是有改动的 Markdown 单元,再是标题小节,最后是整篇文档——机械地汇集这次更新的工作集:被改一侧自上次确认以来的 diff、每个改动块的三方文本、改动触及的术语表行,以及有约束力的更新规则;仅落在配对中逐字节一致的围栏代码块内的改动可以直接算出,`--apply` 则经结构签名校验后把它拼接进对侧文件([briefed-updates Agent Note](../../.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md))。两侧对齐后,`pnpm run verify-translation-pairing --write ` 重新记录两个 hash;那份 yaml diff 就是「确认一致」这个动作本身,可以被评审,也正因如此,`--write` 要求点名你确认过的配对(`--write --all` 是显式的全语料形式)。\n- **语言切换行。** 两个文件在各自 H1 标题之后立即互链:英文文件带 `English | [中文](foo.zh.md)`,中文文件带 `[English](foo.md) | 中文`。\n- **结构与另一侧一一对应。** 标题深度与顺序、列表类型、有序列表起始编号、列表项数量、表格行列数、链接目标与逐字节一致的代码块在配对两侧一一对应;完整保持规则见 [translation-rules.md](translation-rules.md)。既有 Markdown 门禁对 `.zh.md` 文件原样生效(`verify-md-wrap`、`verify-md-links`)。\n\n## 门禁:verify-translation-pairing\n\n`pnpm run verify-translation-pairing`(`doc-sync`(文档同步门禁)的一环,贡献者会针对文档变更在本地运行,CI 则会完整运行)机械地强制执行这份契约:\n\n1. 范围内的每篇文档都有完整配对。发现 README 时,basename 不区分大小写,因此 `missions/readme.md` 与其他文档根一样属于范围。\n2. 任何已存在的配对产物都完整且一致:三个文件齐全、每一侧的当前 blob hash 等于记录值(改了任一侧而没重新确认配对就变红)、双方都带语言切换行、结构签名按序一致:标题深度、逐字节一致的代码块(信息字符串与内容)、表格行列数、列表类型、有序列表起始编号、列表项数量,以及除切换行之外的每个链接目标。\n3. 列为 `excluded` 的文件完全没有 `.zh.md`,也没有 `.i18n.yaml`。`.agents/notes/archived/` 下冻结的 Agent Note 不受这个持续演进的门禁约束;专用校验器会要求其现有的三个配对文件完整,并将其封存。\n\n面向源码的代码门禁会把精确的 `.zh.md` 围栏序列视为其无后缀兄弟文件的派生内容,而不会再次编译相同代码或在 manifest 中重复登记。该序列必须在长度、顺序、围栏类型和按字节精确的正文上一致;否则两份副本仍会独立受检,配对门禁也会报告结构不匹配。\n\n`pnpm run verify-translation-pairing --list` 打印范围内每篇文档的当前配对状态(missing、out-of-sync 或 ok)。它从不失败;其中 missing 与 out-of-sync 行指出普通检查会拒绝的违规。\n\n`pnpm run verify-translation-pairing ` 只检查被点名的配对——配对的三个文件中的任意一个(或其裸词干)都能点名它——因此更新循环几秒内就能验证自己的配对,而不必重新扫描全语料。`doc-sync` 与 CI 运行的是无参数的全语料形式;限定范围的绿灯在 PR 层面永远不能替代它。\n\n这个门禁带来的实际规则是:**当一个 PR 修改了已配对文档的任一侧时,同一个 PR 更新另一侧并重新记录配对**(运行 [dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md) skill(技能),再 `--write `),与本仓库既有的代码与 README 的 doc-sync 规则完全一致。留下失去同步的配对的 PR 会在 CI 变红。\n\n把门禁的边界说白:**门禁通过意味着这组文档在当前内容上的一致性得到了确认,不代表确认本身正确可靠。** 它检查记录的 hash 与结构签名;它无法判断两侧是否真的在说同样的话,也无法判断措辞是否准确、术语是否得当、行文是否自然;这部分契约由评审者把关,见 [translation-rules.md](translation-rules.md)。重新记录了 hash 但另一侧翻得潦草的配对能通过门禁;它不得通过评审。\n\n## 范围与排除\n\n**范围**:除 vendor 源码外的全部 README,以及 `.agents/notes/**`、`docs/**` 与 `python/**` 下的全部活跃文档。匹配 README 时只看文件名且不区分大小写,因此今后新增的目录无需再修改 manifest。依赖目录、被忽略的构建产物目录以及冻结的 `.agents/notes/archived/` 目录树只在发现阶段排除,不属于持续演进的翻译源文档。\n\n**排除**(永不配对,门禁拒绝为它们建 `.zh.md` 或 `.i18n.yaml`):\n\n- `docs/cordis-catalog/`、`docs/tool-catalog/`、`docs/config-catalog.md`、`docs/persistence-catalog.md`、`docs/module-graph.md`、`docs/agent-lifecycle.md`、`docs/capability-seams.md`、`docs/event-producer-consumer.md`、`docs/graph-atlas.md` 与 `docs/tool-execution-pipeline.md`:生成文件;生成器目前只输出英文,手写译文在每次重新生成时必然陈旧。计划中的后续工作是让生成器同时输出中文,届时这些文件移出排除清单。\n- `docs/AGENTS.md`、`.agents/notes/**/AGENTS.md` 以及指向它们的 `CLAUDE.md` 指令符号链接:agent 指令,与根 `AGENTS.md` 一样只以英文维护。\n- `docs/i18n/terminology.md` 与 [style-samples.md](style-samples.md):二者本身即为中英对照文档。\n- [translation-prompt.md](translation-prompt.md):自动翻译流水线的提示词模板;正文逐字进入模型请求,配对翻译会改变流水线行为。\n- `.agents/notes/archived/`:冻结的历史三文件配对。[`verify-archived-agent-notes`](../../scripts/verify-archived-agent-notes.ts) 校验其完整性和内容封存记录;翻译维护绝不能重写这些文件。\n\n**统一要求**:当前及今后纳入范围的每篇文档,合并时都必须构成完整的双语配对。[scripts/translation-pairing.manifest.json](../../scripts/translation-pairing.manifest.json) 只包含显式排除项;不存在逐文件推进清单、日期分界或 README 专用政策类别。\n\n## 分工\n\n这里的对侧文件由运行 [dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md) 的 agent 生成,再由人评审:在这里推理(inference)很便宜,评审注意力才是稀缺资源。门禁负责检查配对是否完整、记录的 hash、语言切换行以及本文列出的结构签名;翻译质量、术语和签名未涵盖的结构要求仍由评审把关。提示词契约也有可执行实现:[scripts/translation-prompt.ts](../../scripts/translation-prompt.ts) 会把仓库内置的模板(注入术语表;模板自带经人工校准的规则)渲染为英译中或中译英两个方向的提示词,并解析三段式响应;`doc-sync` 中的 `verify-translation-prompt` 会检查两个渲染方向与仓库内示例。\n" }, { "role": "user", diff --git a/scripts/translation-pairing-git.ts b/scripts/translation-pairing-git.ts new file mode 100644 index 0000000000..992f0abbb9 --- /dev/null +++ b/scripts/translation-pairing-git.ts @@ -0,0 +1,50 @@ +/** Git-blob operations owned by the bilingual pairing workflow. */ + +import { spawnSync } from 'node:child_process' +import { createHash } from 'node:crypto' + +const SNAPSHOT_REF_PREFIX = 'refs/dsh/translation-pairing/snapshots' + +/** Full SHA-1 Git blob hash (the 40-hex format used by pairing records). */ +export function gitBlobHash(content: Buffer): string { + const hash = createHash('sha1') + hash.update(`blob ${content.byteLength}\0`) + hash.update(content) + return hash.digest('hex') +} + +function runGit(root: string, args: string[], operation: string, input?: Buffer): Buffer { + const result = spawnSync('git', ['-C', root, ...args], { + input, + maxBuffer: 1 << 26, + }) + if (result.error) { + throw new Error(`${operation} failed: ${result.error.message}`, { cause: result.error }) + } + if (result.status !== 0) { + throw new Error(`${operation} failed with status ${String(result.status)}: ${result.stderr.toString('utf8').trim()}`) + } + return result.stdout +} + +/** + * Persist exact working-tree bytes so a pairing record can later recover them + * with `git cat-file`, even when they have never appeared in the index or a + * commit. The returned object ID is checked against the pairing format's own + * content hash before the caller writes a sidecar. + */ +export function storeGitBlob(root: string, content: Buffer): string { + const expected = gitBlobHash(content) + const stored = runGit(root, ['hash-object', '-w', '--stdin'], 'git hash-object -w --stdin', content) + .toString('utf8') + .trim() + if (stored !== expected) { + throw new Error(`git hash-object -w --stdin returned unexpected object ID ${JSON.stringify(stored)}; expected ${expected}`) + } + runGit( + root, + ['update-ref', `${SNAPSHOT_REF_PREFIX}/${stored}`, stored], + 'git update-ref for translation snapshot', + ) + return stored +} diff --git a/scripts/translation-pairing.spec.ts b/scripts/translation-pairing.spec.ts index da33dfdd6b..4d44266887 100644 --- a/scripts/translation-pairing.spec.ts +++ b/scripts/translation-pairing.spec.ts @@ -1,6 +1,11 @@ -/** Regression tests for the bilingual corpus scope and structural signature. */ +/** Regression tests for bilingual snapshots, corpus scope, and structure. */ +import { execFileSync, spawnSync } from 'node:child_process' +import { mkdtempSync, rmSync } from 'node:fs' +import { tmpdir } from 'node:os' +import { join } from 'node:path' import { describe, expect, it } from 'vitest' +import { gitBlobHash, storeGitBlob } from './translation-pairing-git.ts' import { isTranslationScopeFile, pairAnchorOfArgument, @@ -15,6 +20,71 @@ function signature(markdown: string) { return translationStructureSignature(parseTranslationMarkdown(markdown), 'counterpart.zh.md') } +function gitSupportsObjectFormat(format: 'sha256'): boolean { + const root = mkdtempSync(join(tmpdir(), 'dsh-git-object-format-')) + try { + return spawnSync('git', ['init', '--quiet', `--object-format=${format}`, root], { + stdio: 'ignore', + }).status === 0 + } finally { + rmSync(root, { recursive: true, force: true }) + } +} + +const supportsSha256ObjectFormat = gitSupportsObjectFormat('sha256') + +describe('translation pairing snapshots', () => { + it('stores exact uncommitted bytes for later recovery by object ID', () => { + const root = mkdtempSync(join(tmpdir(), 'dsh-translation-pairing-')) + try { + execFileSync('git', ['init', '--quiet', root], { + env: { ...process.env, GIT_DEFAULT_HASH: 'sha1' }, + }) + const content = Buffer.from([0x75, 0x6e, 0x63, 0x6f, 0x6d, 0x6d, 0x69, 0x74, 0x74, 0x65, 0x64, 0x0a, 0xff]) + + const objectId = storeGitBlob(root, content) + + expect(objectId).toBe(gitBlobHash(content)) + expect(execFileSync('git', [ + '-C', root, 'rev-parse', `refs/dsh/translation-pairing/snapshots/${objectId}`, + ], { encoding: 'utf8' }).trim()).toBe(objectId) + execFileSync('git', ['-C', root, 'gc', '--prune=now']) + expect(execFileSync('git', ['-C', root, 'cat-file', '-p', objectId])).toEqual(content) + } finally { + rmSync(root, { recursive: true, force: true }) + } + }) + + it('fails before a sidecar can reference an unavailable object', () => { + const root = mkdtempSync(join(tmpdir(), 'dsh-translation-pairing-')) + try { + expect(() => storeGitBlob(root, Buffer.from('snapshot'))).toThrow('git hash-object -w --stdin failed') + } finally { + rmSync(root, { recursive: true, force: true }) + } + }) + + it('fails clearly when Git cannot be started', () => { + const previousPath = process.env.PATH + try { + process.env.PATH = '' + expect(() => storeGitBlob('.', Buffer.from('snapshot'))).toThrow('git hash-object -w --stdin failed') + } finally { + process.env.PATH = previousPath + } + }) + + it.skipIf(!supportsSha256ObjectFormat)('rejects an object format that pairing records cannot represent', () => { + const root = mkdtempSync(join(tmpdir(), 'dsh-translation-pairing-')) + try { + execFileSync('git', ['init', '--quiet', '--object-format=sha256', root]) + expect(() => storeGitBlob(root, Buffer.from('snapshot'))).toThrow('returned unexpected object ID') + } finally { + rmSync(root, { recursive: true, force: true }) + } + }) +}) + describe('translation pairing manifest', () => { it('accepts an exclusions-only manifest', () => { expect(parseTranslationPairingManifest(JSON.stringify({ diff --git a/scripts/verify-translation-pairing.ts b/scripts/verify-translation-pairing.ts index afa458f8a5..4ebd664cb7 100644 --- a/scripts/verify-translation-pairing.ts +++ b/scripts/verify-translation-pairing.ts @@ -9,9 +9,9 @@ * See `docs/i18n/README.md` for the owning contract. */ -import { createHash } from 'node:crypto' import { existsSync, globSync, readFileSync, writeFileSync } from 'node:fs' import { basename, join, resolve, sep } from 'node:path' +import { gitBlobHash, storeGitBlob } from './translation-pairing-git.ts' import { linksTo, parseTranslationMarkdown, @@ -54,14 +54,6 @@ function isExcluded(file: string): boolean { return manifest.excluded.some(entry => (entry.endsWith('/') ? file.startsWith(entry) : file === entry)) } -/** Full git blob hash (what `git hash-object` prints). */ -function blobHash(content: Buffer): string { - const hash = createHash('sha1') - hash.update(`blob ${content.byteLength}\0`) - hash.update(content) - return hash.digest('hex') -} - /** The three paths of a pair, derived from the English-file path. */ function pairPaths(source: string): { zh: string; meta: string } { return { zh: source.replace(/\.md$/, '.zh.md'), meta: source.replace(/\.md$/, '.i18n.yaml') } @@ -148,7 +140,12 @@ if (writeMode) { } continue } - const record = renderMeta(source, blobHash(readFileSync(join(root, source))), zh, blobHash(readFileSync(join(root, zh)))) + const sourceContent = readFileSync(join(root, source)) + const zhContent = readFileSync(join(root, zh)) + // A consistency record is also a recovery pointer for the briefing + // generator. Persist both snapshots even when the sidecar text is already + // current, because the bytes may exist only in this working tree. + const record = renderMeta(source, storeGitBlob(root, sourceContent), zh, storeGitBlob(root, zhContent)) if (existsSync(join(root, meta)) && readFileSync(join(root, meta), 'utf8') === record) continue writeFileSync(join(root, meta), record) console.log(`verify-translation-pairing: recorded ${meta}`) @@ -203,7 +200,7 @@ for (const source of [...pairAnchors].sort()) { let consistent = true for (const [file, content] of [[source, sourceContent], [zh, zhContent]] as const) { - const current = blobHash(content) + const current = gitBlobHash(content) if (record.get(basename(file)) !== current) { errors.push(`${file}: out of sync — content no longer matches the pair's last confirmed-consistent state in ${meta} (bring the other side along, then re-record with --write)`) consistent = false